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Rock Mass Grouting in the L0ren Tunnel: Case Study with the Main Focus on the Groutability and Feasibility of Drill Parameter Interpretation

机译:L0ren隧道的岩体注浆:案例研究,重点关注钻探参数解释的可灌性和可行性

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The L0ren road tunnel is a part of a major project at Ring road 3 in Oslo, Norway. The rock part of the tunnel is 915 m long and has two tubes with three lanes and breakdown lanes. Strict water ingress restriction was specified and continuous rock mass grouting was, therefore, carried out for the entire tunnel, which was excavated in folded Cambro-Silurian shales intruded by numerous dykes. This paper describes the rock mass grouting that was carried out for the L0ren tunnel. Particular emphasis is placed on discussing grout consumption and the challenges that were encountered when passing under a distinct rock depression. Measurement while drilling (MWD) technology was used for this project, and, in this paper, the relationships between the drill parameter interpretation (DPI) factors water and fracturing are examined in relation to grout volumes. A lowering of the groundwater table was experienced during excavation under the rock depression, but the groundwater was nearly re-established after completion of the main construction work. A planned 80-m watertight concrete lining was not required to be built due to the excellent results from grouting in the rock depression area. A relationship was found between leakages mapped in the tunnel and the DPI water factor, indicating that water is actually present where the DPI water factor shows water in the rock. It is concluded that, for the L0ren tunnel, careful planning and high-quality execution of the rock mass grouting made the measured water ingress meet the restrictions. For future projects, the DPI water factor may be used to give a better understanding of the material in which the rock mass grouting is performed and may also be used to reduce the time spent and volumes used when grouting.
机译:L0ren公路隧道是挪威奥斯陆3号环路上一项重大项目的一部分。隧道的岩石部分长915 m,有两个带三个车道和故障车道的管。规定了严格的进水限制,因此对整个隧道进行了连续的岩体注浆,并在由众多堤防侵入的折叠的坎布罗-西陆纪页岩中开挖了该隧道。本文介绍了洛伦隧道的岩体灌浆。特别强调讨论水泥浆的消耗量以及在明显的岩石凹陷处经过时遇到的挑战。该项目使用随钻测量(MWD)技术,并且在本文中,研究了与注浆量相关的钻探参数解释(DPI)因素水和压裂之间的关系。在岩石洼地下的开挖过程中,地下水位下降,但是在完成主要建设工作后,地下水几乎恢复了原状。由于岩石陷落区的灌浆效果极佳,因此无需建造计划的80 m水密混凝土衬砌。在隧道中测得的泄漏量与DPI水因子之间发现了一种关系,这表明在DPI水因子显示岩石中的水的地方实际存在水。得出的结论是,对于洛伦隧道,仔细的规划和高质量的岩体灌浆使测得的入水量达到了限制。对于将来的项目,DPI水因子可用于更好地理解进行岩浆灌浆的材料,还可用于减少灌浆所花费的时间和体积。

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